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Self-Powered Transformer Eddy Current Damper for Vibration Control of Rotors

机译:转子振动控制的自动变压器涡流阻尼器

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The vibration control of rotors is usually performed using passive dampers, in layouts where the support of the rotating parts is achieved by rolling-element or hydrodynamic type bearings. Active magnetic bearings could be a promising however they show serious drawbacks, in terms of mass, at least when the generation of strong magnetic forces is required. Electromagnetic dampers seem a valid alternative to viscoelastic/hydraulic dampers and to active magnetic bearings because their simpler architecture, and, if of transformer type, also for the absence of power electronics, position sensors and any fast feedback loop. However transformer eddy current dampers require a constant voltage power supply (usually based on common power electronics) often integrated with active electronics components. To reduce cost, improve the reliability some applications could benefit a simplified system avoiding active components and providing the required energy with an embedded generator. The aim of the present paper is to propose a self-powered damper to fulfil these requirements. A three-phase permanent magnet electric generator (connected to the rotating shaft) generates the required power for the damping device. The generator is connected to the damping circuit by means of suitable impedance and a three-phase rectifier.
机译:转子的振动控制通常使用被动阻尼器进行,其中布局通过滚动元件或流体动力型轴承实现旋转部件的支撑。在质量方面,主动磁轴承可能是一个有希望的,但是至少在需要产生强磁力时,它们都显示出严重的缺点。电磁阻尼器似乎是粘弹性/液压阻尼器和主动磁轴承的有效替代方案,因为它们更简单的架构,以及变压器类型,也没有电力电子设备,位置传感器和任何快速反馈回路。然而,变压器涡流阻尼器需要恒定电压电源(通常基于公共电源电子设备),通常与主动电子元件集成。为了降低成本,提高可靠性一些应用可能使简化的系统避免有源组件,并通过嵌入式发电机提供所需的能量。本文的目的是提出自动阻尼器以满足这些要求。三相永磁发电机(连接到旋转轴)为阻尼装置产生所需的功率。通过合适的阻抗和三相整流器连接到阻尼电路。

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